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根系氮吸收过程及其主要调节因子 被引量:35

Physiological processes and major regulating factors of nitrogen uptake by plant roots
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摘要 氮(N)是植物根系吸收最多的矿质元素之一.全球变化将使土壤中N的有效性发生改变,影响陆地生态系统碳分配格局与过程.研究根系N吸收及其调控对预测生态系统结构和功能具有重要理论意义.由于土壤中存在多种形态的N源,长期的生物进化和环境适应导致植物根系对不同形态N的吸收部位、机理及调控有较大差别.因此,植物长期生长在以某一形态N源为主的土壤上就形成了不同的N吸收机制和策略.本文简述了近年来在植物根系N吸收和调控方面的最新研究进展,重点评述了不同形态N在土壤中的生物有效性,根系N吸收部位,N在木质部中的装载和运输,不同形态N(NO3-、NH4+和有机氮)的吸收机制,以及根系N吸收的自身信号调控和环境因子对根系N吸收的影响.在此基础上,提出了目前根系N吸收研究中存在的几个问题. Soil nitrogen (N) is one of the mineral elements absorbed in large amount by plant roots, while global change could affect its availability, and furthermore, affect the carbon (C) allocation in terrestrial ecosystem. Therefore, the study of plant root N uptake and regulation becomes an important issue in predicting the structure and function of ecosystem. In the biosphere, plants are exposed to different N forms, and long-term biological evolution and environmental adaptation resulted in a significant distinction of plant root N uptake regions and metabolic processes, as well as the regulation of the N uptake. However, plant has formed different mechanisms and strategies for N uptake, because of their living in the soil with dominant sole N form for generations. In this paper, the research advances on how plant root absorbs N and which factors control the N absorption processes were reviewed, with the biological availability of different soil N forms ( nitrate, ammonium and organic N), N uptake regions in root, N loading and transport in xylem, and uptake mechanisms of different N forms emphasized. The signal regulation of N uptake and the effects of environmental factors were also considered. Several issues about the present researches on plant root N uptake were discussed.
出处 《应用生态学报》 CAS CSCD 北大核心 2007年第6期1356-1364,共9页 Chinese Journal of Applied Ecology
基金 国家自然科学基金重点资助项目(30130160)
关键词 氮吸收 调控 氮运输 溢泌 根系 nitrogen uptake regulation nitrogen transport efflux root system
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参考文献89

  • 1Aslam M,Travis RL,Rains DW.1996.Evidence for substrate induction of a nitrate efflux system in barley roots.Plant Physiology,112:1167-1175
  • 2Atkin OK.1996.Reassessing the nitrogen relations of Arctic plants.A mini-review.Plant,Cell and Environment,19:695-704
  • 3Atkin OK,Edwards EJ,Loveys BR.2000.Response of root respiration to changes in temperature and its relevance to global warming.New Phytologist,147:141-154
  • 4Barber SA.1984.Soil Nutrient Bioavailability:A Mechanistic Approach.New York,USA:John Wiley and Sons:1-230
  • 5BassiriRad H.2000.Kinetics of nutrient uptake by roots:Responses to global change.New Phytologist,147:155-169
  • 6BassiriRad H,Caldwell MM,Bilbrough C.1993.Effects of soil temperature and nitrogen status on kinetics of ^15NO3^- uptake by roots of field-grown Agropyron desertorum (Fisch.ex Link) Schult.New Phytologist,123:485-489
  • 7BassiriRad H,Grin KL,Strain BR,et al.1996.Effects of CO2 enrichment on root ^15NH4^+ uptake kinetics and growth in seedlings of loblolly and ponderosa pine.Tree Physiology,16:957-962
  • 8BassiriRad H,Thomas RB,Reynolds JF,et al.1996.Differential responses of root uptake kinetics of NH4^+ and NO3^-to enriched atmospheric CO2 in field-grown loblolly pine.Plant,Cell and Environment,19:367-371
  • 9Bowling DJF.1973.A pH gradient across the root.Journal of Experimental Botany,24:1041-1045
  • 10Britto DT,Glass ADM,Kronzucker HJ,et al.2001.Cytosolic concentrations and transmembrane fluxes of NH4^+/NH3:An evaluation of recent proposals.Plant Physiology,125:523-526

二级参考文献54

  • 1杜永臣,张福墁,刘步洲.不同形态氮素对温室沙培黄瓜生长发育的影响[J].园艺学报,1989,16(1):45-50. 被引量:16
  • 2Aher JD, Nadelhoffer KJ, Steudler P, et al. 1989. Nitrogen saturation in northern forest ecosystem. Bioscience, 39 (6):378~385.
  • 3Braisa S, Pare D, Camire C, et al. 2002. Nitrogen net mineralization and dynamics following whole-tree harvesting and winter windrowing on clayey sites of northwestern Quebec. For Ecol Man, 157:119~130.
  • 4DeLuca TH, Zouhar KL. 2000. Effects of selection harvest and prescribed fire on the soil nitrogen status of ponderosa pine forests. For Ecol Man, 138: 263 ~ 271.
  • 5Femandez IJ, Simmons GA, Briggs RD. 2000. Indices of forest floor nitrogen status along a climate gradient in Maine, USA. For Ecol Man, 134:177 ~ 187.
  • 6Fernandez AP, Acea MJ, Carballas T. 1998. Soil microbial and extractable C and N after wildfire. Biol Fert Soils, 27:132~142.
  • 7Giardina CP, Rhoadesl CC. 2001. Clear cutting and burning affect nitrogen supply, phosphorus fractions and seedling growth in soils from a Wyoming lodgepole pine forest. For Ecol Man, 140:19~ 28.
  • 8Jenkinson DS, Powlson DS. 1976. The effects of biocidal treatments on metabolism in soil V. A method for measuring soil biomaas. Soil Biol Biochem, 8:209~213.
  • 9Knoepp JD, Swank WT. 2002. Using soil temperature and moisture to predict forest soil nitrogen mineralization. Biol Fert Soils, 36:177~ 182.
  • 10Knoepp JD. 1998. Rates of nitrogen mineralization across an elevation and vegetation gradient in the southern Appalachians. Plant Soil, 204(2): 235~ 241.

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